A bioassay to determine Poa annua responses to indaziflam

IF 3.5 Q1 AGRONOMY
Benjamin D. Pritchard, J. J. Vargas, Mohit Mahey, J. Brosnan, Eric L. Patterson
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Abstract

Herbicide resistance within Poa annua is widespread in managed turfgrass systems. In 2020, a P. annua collection from a golf course in the southeastern United States was reported to be resistant to indaziflam as well as six other mode-of-action groups. This first report in 2020 suggests that turfgrass managers would benefit from a bioassay to screen other collections with putative indaziflam resistance. A dose-response experiment was conducted with ten concentrations of indaziflam (0, 250, 500, 667, 1000, 1143, 1333, 2000, 4500, and 9000 pM) in Gelrite® culture during 2021 and 2022. An herbicide-susceptible (S1) collection of P. annua, a resistant standard (Site 3A), and a collection with putative resistance to indaziflam (Site 18) were included in this experiment. Petri dishes were filled with 80 mL of Gelrite® (3.75 g L−1) containing technical grade (≥ 98%) indaziflam and rifampicin (1000 µg mL−1). Each plate was sealed with parafilm after placing 15 seeds of a single collection on the Gelrite® surface. At 14 days after seeding (DAS), the length of the radicle (mm) protruding from each seed was recorded with digital calipers. Indaziflam concentrations required to reduce root growth by 70% (EC70) were calculated via non-linear regression. Statistically significant differences were detected among P. annua collections with the EC70 values for the herbicide-susceptible collection measuring 708 pM [95% confidence interval (CI) = 656 to 764 pM] compared to 2130 pM (CI = 1770 to 2644 pM) for Site 3A and 4280 pM (CI = 3464 to 5442) for Site 18. Given that resistant collections exhibited longer root length in the absence of herbicide, confocal microscopy analysis was used to explore differences in root cell count among resistant and susceptible P. annua collections; however, few differences in cell count were detected. Overall, these findings indicate that a discriminatory dose of 708 pM (95% CI = 656 to 764 pM) can be used to differentiate among susceptible and resistant P. annua collections from field sites where poor control is observed following broadcast applications of indaziflam.
测定绵羊对茚地普兰反应的生物测定
早熟禾对除草剂的抗性在有管理的草坪草系统中普遍存在。2020年,据报道,来自美国东南部一个高尔夫球场的一个P.annua系列对吲唑福明以及其他六种行动模式有抵抗力。2020年的第一份报告表明,草坪草管理者将受益于生物测定,以筛选其他具有公认耐吲唑菌耐药性的集合。在2021年和2022年期间,在Gellite®培养物中用10种浓度的吲唑福明(0、250、500、667、1000、1143、1333、2000、4500和9000 pM)进行了剂量反应实验。本实验包括一个对除草剂敏感(S1)的P.annua集合、一个抗性标准品(位点3A)和一个对吲唑菌具有假定抗性的集合(位点18)。培养皿中加入80 mL Gellite®(3.75 g L−1),其中含有工业级(≥98%)吲唑福明和利福平(1000µg mL−1)。在Gellite®表面上放置单个集合的15个种子后,用石蜡膜密封每个板。在播种后14天(DAS),用数字卡尺记录从每个种子突出的胚根的长度(mm)。通过非线性回归计算将根系生长减少70%(EC70)所需的吲唑嗪浓度。在P.annua采集之间检测到统计学上的显著差异,除草剂敏感采集的EC70值为708 pM[95%置信区间(CI)=656至764 pM],而3A位点为2130 pM(CI=1770至2644 pM),18位点为4280 pM。考虑到在没有除草剂的情况下,抗性集合表现出更长的根长,使用共聚焦显微镜分析来探索抗性和易感的P.annua集合之间根细胞计数的差异;然而,几乎没有检测到细胞计数的差异。总的来说,这些发现表明,708 pM(95%CI=656至764 pM)的鉴别剂量可用于区分易感和抗性的P.annua集合,这些集合来自在施用吲唑福明后观察到控制不良的现场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Agronomy
Frontiers in Agronomy Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
4.80
自引率
0.00%
发文量
123
审稿时长
13 weeks
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